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Suvanine Sesterterpenes from a Tropical Sponge Coscinoderma sp. Inhibit Isocitrate Lyase in the Glyoxylate Cycle

机译:来自热带海绵球菌属的金黄色葡萄球菌的酯。在乙醛酸循环中抑制异柠檬酸裂合酶

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The glyoxylate cycle is a sequence of anaplerotic reactions catalyzed by the key enzymes isocitrate lyase (ICL) and malate synthase (MLS). Mutants of Candida albicans lacking ICL are markedly less virulent in mice than the wild-type. Suvanine sesterterpenes (1−9) isolated from a tropical sponge Coscinoderma sp. were evaluated for their inhibitory activities toward recombinant ICL from C. albicans. These studies led to the identification of a potent ICL inhibitor, suvanine salt (2), which possesses a sodium counterion and displays an inhibitory concentration value (IC50) of 6.35 μM. The growth phenotype of ICL deletion mutants and semi-quantitative reverse transcription-polymerase chain reaction (RT-PCR) analyses indicated that compound 2 inhibits the ICL mRNA expression in C. albicans under C2-carbon-utilizing conditions. The present data highlight the potential for suvanine sesterterpenes treatment of C. albicans infections via inhibition of ICL activity.
机译:乙醛酸循环是由关键酶异柠檬酸裂合酶(ICL)和苹果酸合酶(MLS)催化的一系列异常反应。缺乏ICL的白色念珠菌突变体在小鼠中的毒性明显低于野生型。从热带海绵Coscinoderma sp。分离出的Suvine sesterterpenes(1-9)。评估了它们对来自白色念珠菌的重组ICL的抑制活性。这些研究导致鉴定出一种有效的ICL抑制剂糖胺盐(2),该盐具有钠抗衡离子并显示出6.35μM的抑制浓度值(IC 50 )。 ICL缺失突变体的生长表型和半定量逆转录-聚合酶链反应(RT-PCR)分析表明,在C 2 -碳利用下,化合物2抑制了白色念珠菌的ICL mRNA表达。条件。本数据突出显示了通过抑制ICL活性来进行金黄色葡萄球菌治疗白念珠菌感染的潜力。

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